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H T D / UTELECOM Unit
High Technology in Refrigeration Devices
HTD /U --0--PD --GB --00 -- Product Documentation
Packaged Air Conditioning Unitsfor
TELECOM Shelters
GB
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Index
iHTD/U--0--PD--GB--00 -- 05.10.2003
Index HTD/U = Design & Technology
Features and Fortes
Configuration DIGIT
Manufacturing Specifications
Control Software and Hardware
List of Main Options
Tests and Reference Standards
Technical Data
Dimensional Drawings
Refrigerant Circuit
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HTU
FRONT VIEW
HTD
FRONT VIEW
HTD/U = Design & Technology
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HTD/U = Design &
Technology
HTD/U units
The units of the series HTD/U “HiRefTelecom packaged air conditioning unitsfor indoor applications ” are to be used forthe conditioning of low and mediumpowered telephone exchanges.
They are designed to be mounted insideshelter.
Versions
Thanks to the innovative design and theoriginal solutions, HTD/U can be easlyused in the most different configurationsof the destination site. It is available in thefollowing versions:
D HTD version:-- Air delivery Downwards;
D HTU version:-- Air delivery Upwards.
Indoor mounting
The machines are designed for an indoormounting with Plug & Play logic, to reducethe installation times and the need ofspecific professional skills in theinstallation step.
Direct expansion
The HTD/U package units aremono--block conditioners with directexpansion and air--cooled condenser.The innovative system of air circulationgives a significant improvement of theperformances in different thermal load
conditions.
Reduced noise level
The use of centrifugal fans with 4--polebackward curved blades, together with aScroll--type compressor and a cabinetdesign eliminating every source of innersound reflection and vibrations, makesthis equipmentsuitable also forcity areas.
Minimized pressure drop
The whole recirculating and Free--Coolingsection has been designed to limit thepressure drop (air side) and to maximizethe unit performance; for this reason, the
HTD/U units are featured by the exclusiveequipment with backward curved bladecentrifugal fans (Plug fans), the widesurfaces of the evaporating coils and ofthe intake grilles, in line with the supplystandard of the main phone companies.
Structure
All HTD Uunits supporting structure are
made of thick galvanized sheet steel, andenclosing panels made galvanised sheersteel coated with epoxy polyester powderpaint oven cured at 180 ºC (RAL xxxx). Itis featured by rounded shape edges,according to innovative style trends andthe accident prevention. All structuredetails are entirely produced in--housewith automatic processes integrating theCAD--3D designing (solid modeller) withthe production process (CAM) =CAD--CAM.
The unit features an exclusive designwhich, combined with a rational layout ofcomponents and extremely compactdimensions, lends it an attractiveappearance.
Panelling
The front panels are equipped withhandles for an easy removal forinspections. The unit maintenance can befully made from the front, including theinnovative extractable damper section.This enables a unique flexibility, with unit“On Site Upgrading” and the possibility toaccess and clean the condensatecollecting tray.
Power supplies
All units are available with different supplyvoltages, with the option of double powersupply. In this case it is possible to havea 48 VDC solution for the air--conditioningcontrol, even in case of power failure.
European directives
The HTD/U units are designed andmanufactured according to the Europeandirectives currently in force, and areconsequently marked E.
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Features and Fortes
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Features and Fortes
Design & Technology
The HTD U
units introduce a new plantmodel featured by a pleasant designmatched with a rational arrangement ofthe components and an excellentassembly compactness.
All units are factory tested by usingautomatic systems based on objective“in--out” criteria and are ready to beinstalled and started by simple wiring on
site.
Installation
The HTD U package air--conditioning unitis suitable for all environments exeptaggressive ones. Make sure that the airinlet grilles have more than 0,8 m freespace around. Do not place anyobstacles near the unit and make surethat the air flow is not impeded byobstacles and/or situarions causing backsuction (see Fig. 1).
The recommended sizes for the power
cables and emergency line are shown inTab.1.
Handling
While the unit is being unloaded andpositioned, utmost care must be taken toavoid abrupt or violent manoeuvres. Theunit must be handled carefully andgently;avoid using machine components asanchorages or holds and always keep it inan upright position. The unit should belifted using the pallet it is packed on; atranspallet or similar conveyance means
should be used.
Start--Up
Preliminary checks
D Check that the electrical connectionshave been made properly and that allthe terminals are securely tightened.This check should also be included in aperiodic six--month inspection.
D Check that the voltage at the RSTterminals is 400V + 5% and make surethe yellow indicator light of the phasesequence relay is on. The phase
sequence relay is positioned on theelectric control board; if thesequenceisnot duly observed, it will not enable themachine to start.
D Make sure there are no refrigerant leaksthat may have been caused byaccidental impacts during transportand/or installation.
D Check the power supply to thecrankcase heating elements (ifpresent).
First time starting
Attention:
The unit is fil led with HFC R407Crefrigerant. This refrigerant belongs to
group I (no toxic- no dangerous)according to EN Norm378 and accordingthe specification contained into CEE law
n5 2037/00.D Install the unit in the computer room.D Connect the power supply and the
earth connection to themain switchandto the main earth connection.
The starting procedure is operated bypressing the key “ON” on the controlkeyboard.
Noise levels
The HTD U units include theexclusiveuseof ventilation solutions, featured by a lowemitted noise level making theseconditioners compatible with cityinstallations.The support structure, thepanels and the fastening systems aredesigned to reduce vibrations and theirtransmission as low frequency soundemissions as much as possible.
Energy efficiency
The highest possible energy efficiencyhas been the main target in the wholethermo--dynamic and aeraulic designing.The refrigerating circuit is featured by theuse of “rolling piston” or “Scroll”compressors with top reliability and(optional) possibility of replacing thetraditional with an electronically --controlled electric valve: this brings areduced energy consumption by 50%when the outer temperature lowers below20!C and, above all, when the directfree--cooling is not possible.The aerauliccircuit implies the use of centrifugal fanswith backward curved blades, featuredby a very high reaction degree, it is thuspossible to remove the scroll and therelevant energy losses in thedynamic--statical conversion; all used
fans can be equipped with “brushless”motor with permanent magnets andrelevant switching electronics, that canbe directly powered by an emergencymains at 48VDC or 24VDC. In this case,the dc motor efficiency matches with thefan efficiency, thus reaching outstandingenergy results (over 45%).
The Freecooling in simultaneousoperation contributes remarkably toreduce energy costs in the range of outer
temperatures between the inner set pointand TFT (Total Free -- Coolingtemperature).
Emergency situations
All units can be equipped with dualsupply: main supply and “DC” supply.
S Main supply:
-- Compressor
-- Heating
-- Condensing section fan
S 24VDC or 48VDC supply:
-- evaporating section fan-- Microprocessor
-- Damper servomotor
In case of mains failure, a voltagepresence relay signals this to the “mP”control that, together with the ventilationand Free--Cooling section, continues tobe powered by back--up batteries. Thisensures the air--conditioning control evenwith possible inner temperature variationsfrom the set--point values.
Manufacturing features
All electric, aeraulic and refrigeratingcomponents are assembled inside themachine cabinet and cannot beaccessed from outside, without removingthe panels. The machine has a min.protection degree IP 44 and theprotection grilles of the rotary partscomply with the accident preventionsection of the norms EN 60335; as option,a further protecting grille for thecondensing section fan front is available.
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Features and Fortes
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Upgrading
The HTD Useries is developed on threedimensional “frames” This enables theupgrading of the basic radio stations dueto the implementation of newtransmissionstandards, and therefore to the increasedinner thermal load.
Fig. 1 -- Service Area (top view)
1 0 0 0 m m200mm
3 0 0 0 m m
I n d o
o r
O u t d o o r
UNIT UNIT
Tab.1 -- Cables Sizes
UNIT MODEL MAINS POWER SUPPLY CABLE TYPE UPS EMERGENCY LINE CABLE TYPE
HTD/U 045
HTD/U 056
HTD/U 073
230V / 1Ph / 50Hz 2 x 6mm2 + T x 6mm2 48VDC / 230VAC 2 x 2,5mm2
HTD/U 090
HTD/U 105
HTD/U 120
HTD/U 150
HTD/U 170
400V / 3Ph + N / 50Hz 4 x 6mm2 + T x 6mm2 48VDC / 230VAC 2 x 4,0mm2
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Configuration DIGIT
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Configuration DIGIT
The numerous constructiveoptions may be selected using the configuration scheme illustrated below.
4 50H
Family:HiRef Telecom Unit
D D version: Air delivery downwards
D U version: Air delivery upwards
Refrigerating capacity“kW x 10”
No. of refrigeratingcircuits
ConfigurationDIGITS
T D 0 1 1 65432 7 8 9 10 11 12
1 Supply + (Auxiliary) 0 230V / 1Ph / 50Hz
1 230V / 1Ph / 50Hz + [24VDC]
2 230V / 1Ph / 50Hz + [48VDC]
3 230V / 1Ph / 50Hz + [230V / 1Ph / 50Hz]
4 400V / 3Ph + N / 50Hz
5 400V / 3Ph + N / 50Hz + [24VDC]
6 400V / 3Ph + N / 50Hz + [48VDC]
7 400V / 3Ph + N / 50Hz + [230V / 1Ph / 50Hz]
2 Control 0 BASIC
B ADVANCED [with local user interface]
D ADVANCED [without local user interface]
3 Refrigerating cycle options 0 R407C
1 R407C + electronic thermal expansion valve
2 R22
3 R22 + electronic thermal expansion valve
4 Cabinet options E Painted galvanized sheet RAL7035
5 Electric re--heating 0 Heaters -- NO
1 Heaters -- YES
6 Free--Cooling 0 Without Free--Cooli ng
G Modulating Free--Coolin g 0--10V
H Free--Cooling with spring return
7 Air f il tration 0 G2 Filter [Standard]
1 G3 Filter
2 G4 Filter
7 G2 Filter + Clogged filter sensor
8 G3 Filter + Clogged filter sensor
9 G4 Filter + Clogged filter sensor
8 Condensation control 0 None
M On / Off
N Modulating fan speed [with pressure sensor]
9 Serial communication 0 None
1 (*) Serial card RS232 Modem
2 Serial card RS485
10 Coils 0 Copper tubes / alu fins [Standard]
C Epoxy coated condenser coil
E Epoxy coated evaporator coil
11 Packaging 0 Standard
1 Wooden crate with cardboard
2 Seaworthy
12 Special 0 Standard
S Special
(*) - only for ADVANCED control
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Manufacturing Specifications
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Manufacturing Specifications
Structure
The HTD Useries units are dedicated tothe indoor use with temperatures rangingbetween –20!C (under condensationcontrol) and +45!C. The entire innerstructure is made up of hotelectro--galvanized sheet with highthickness, and the outer paneling is insmooth 5005 aluminum alloy or, uponrequest, in galvanized sheet painted withepoxy--polyester powders RAL xxxx,oven--cured at 180!C. If painted, the
colour of the units depends on thecustomer’s specifications for re--orderbatches of more than 20 pieces. Theinnovative global design of the machineenables a complete front accessibilitywhereas the outstanding possibility ofextracting/fitting the damper fromthe frontoffers the double chance of upgrading onsite of the machines originally without theFree--Cooling option, and it offers theaccessibility to theevaporatingcoil andtothe condensate collection tray, too.
Refrigerating circuit
The refrigerating circuit is entirely in housemanufactured, using welders certifiedaccording to the Directive PED 97/23 onpressurized containers, and all relevantcomponents are certified according to thesame directive.The exclusive rotary or scroll--type usedcompressors are available in the versionfor fluids type HFC (R407C; R134a); forthe non--EEC countries signing theMontreal Protocol, in the version withHCFC R22.
The machine standard equipment
includes a thermostatic lamination valveand a vacuum start device: this device isenclosed in the Scroll compressor or is
outside in the versions with single--phaserotary compressor/s.The circuit is completed with anti--aciddryer filter with molecular sieve, a flowindicator and pressure intakes for themaintenance and/or inspectionoperations.
Evaporating fan section
The HTD U units are fitted withcentrifugal--type fans, with (tilted)backward curved blades and singleintake. These fans are featured bydiverging blade ducts and by a high outerdiameter/inner diameter ratio, enabling toachieve an outstanding aeraulicefficiency; further, a high output speed
and therefore a launch over seven meterscan be reached through their positiontowards the delivery grille. All machinescan be equipped with fans powered bybrushless motors with permanentmagnets, DC supplied at 48V, and in thiscase, combined with the ADVANCEDmicroprocessor. Therefore, it is possibleto pilot directly the rotating speed suitingit to the different operating conditions,such as: de--humidification, energysaving, etc.
Finned pack evaporator
With its dimensions 25x21.65 and a 3/8”pipe it is composed of 0.10--mm thickaluminum fins and copper pipesexpanded on the same for a completecontact. The design criteria privileges thefront section with the advantage ofreduced losses on the air side, while theexchange surface is sized so as to avoidde--humidification at the project ratedconditions. The condensate collectiontray can be accessed from the unit frontfor cleaning, and can be in galvanizedsheet or, as option, in austenitic stainless
steel AISI 304L. A special flat metallicprefilter protects the evaporating coilagainst dirt: the prefilter can be easly
checked and can be removed from theunit front for cleaning or replacing.
Recirculation air filtration
The filter is located upstream HTD(downstream HTU) the condensing coiland can be easily extracted by removingthe front panel dedicated to the
filter/damper section. Thanks to itsposition, it filters both the recirculationandthefreshair in case of Free--Cooling: in thelatter case, on the fresh air ejectionsection, a metal filter prevents the nestinginside the container of small animals orinsects. The washable synthetic--typefiber filter, with efficiency EU2, is installedin a galvanized sheet frame for an easymaintenance.
Condensing fan section
All used 4--pole motors limit the soundemissions, and are outer rotor type to
improve the energy efficiency and reducethe magnetic noise.
Condenser with finned pack
With geometry 25x21.65 and a 3/8” pipeit is composed of 0.10--mm thickaluminum fins and copper pipesexpanded on the same for a completecontact. The design criteria privileges thefront section with the advantage ofreduced losses on the air side, so that it ispossible to use 6--pole fans withminimized emitted sound power. The
condensing coil can be equipped with ametal filter that can be easily removedfrom oneof themachine sides:this double
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Manufacturing Specifications
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access enables the maintenance even incase of double installation on thecontainer wall. A special flat metallicprefilter protects the condensing coilagainst dirt: the prefilter can be easlychecked and can be removed from theunit front for cleaning or replacing.
Electric board
It is located in a separate cabinet hiddenon the front side by the recirculation airbefore it is cooled by the evaporating coil:this aspect is extremely important for boththe component cooling and, at the sametime, for preventing the condensation on
the bottom side of the board. Allon--boardsystems comply with the EEC Directive“Low tension 73/23” and with the relatednorms. The access to the electric board ispossible with operating unit as it iscompletely separated from the air flow;the protection degree with open panel isIP20.
Packing
The HTD Uunits are packed on woodenpallet with anti--shock cardboard anglesand upper protection incardboard/polystyrene. In the end, thewhole packing is wrapped with protectiontransparent polythene film.
Application fieldHTD U units are to be used within theoperating limits stated in this manual;failure to comply with said limits willinvalidate the warranties provided in thecontract of sale (Tab.2).
Tab.2 -- Field of Applications
MODEL: HTD/U 045 056 073 090 105 120 150 170
Power supply V / Ph / F 230VAC + / --10% / 1Ph / 50Hz
24VDC + / --16% -- 48VDC + / --16%
400VAC + / --10% / 3Ph+N / 50Hz
24 VDC + / -- 16% -- 48 VDC + / -- 16%
Minimum outdoor temperature ºC --20
Maximum outdoor temperature ºC 45 46 45 46 46 45
Min. indoor temperature / humidity ºC / R.H. 19 / 30%
Max. indoor temperature / humidity ºC / R.H. 35 / 50%
Storage conditions ºC / R.H. --10 / 90%
+55 / 90%
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Manufacturing Specifications
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Interconnectivity
All units can be connected with remotesupervision systems by the use of“Gateway”. When using the “mP” controlof the “ADVANCED” type, there is thepossibility of piloting directly a GSMmodem able to send and receive SMSmessages.
Up to max. 6 units can be connected forthe stand--by – rotation control, with mPBASIC, in LAN (Local Area Networking),while up to max. 15 units can beconnected with ADVANCED type mP,sharing the operating parameters andenabling the stand--by rotation andre--start of the installed machines.
The interconnection possibilities,according to control type, aresummarized in the two tables below(Tab.3 and Tab.4).
Tab.3 -- mP ADVANCED
PROTOCOL SERIAL CARD GATEWAY NOTES
Not necessary RS485 network connection
Proprietary Carel RS485 RS485 / RS232 converter
(PC485KIT) Connection with the supervision PC
Modbus" RS485 Not necessary RS485 network connection
BACnett RS485 Gateway BACnett RS485 network connection
" LON RS485 For the dedicated programming, contact
LonWorksLON RS485
Not necessary ,
HiRef S.p.A.
Trend Trend serial Not necessary For the dedicated programming, contact
HiRef S.p.A.
Tcp / Ip RS485 Gateway TCP / IP Ethernet network connection
GSMRS232 GSM modem
For the dedicated programming, contact
HiRef S.p.A.
RS485 control local network PlantWatch + GSM modem PlantWatch operates as concentrator
Tab.4 -- mP BASIC
PROTOCOL SERIAL CARD GATEWAY NOTES
Not necessary RS485 network connection
Proprietary Carel RS485 RS485 / RS232 converter
(PC485KIT) Connection with the supervision PC
Modbus" RS485 Gateway Modbus" RS485 network connection
BACnett RS485 Gateway BACnett RS485 network connection
LonWorks" -- -- --
Trend -- -- --
Tcp / Ip RS485 Gateway TCP / IP Ethernet network connection
GSM RS485 control local network PlantWatch + GSM modem PlantWatch operates as concentrator
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Manufacturing Specifications
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Tab.5 -- HTD -- Machine Main Components
REF. DESCRIPTION
1 Compressor
2 Evaporator
3 Evaporator fan
4 Evaporator air filter
5 Condenser
6 Condenser fans
7 Condenser air filter
8 Electrical heaters
9 Free--Cooling damper
10 Motor (Free--Cooling damper)
11 Electric board
1
Fig. 2 -- HTD -- Machine main components
3
7
2
4
8
6
5
10
10
9
11
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Fig. 3 -- Mechanical cooling Fig. 4 -- Free -- Cooling
IndoorOutdoor IndoorOutdoor
MACHINE FUNCTIONAL SCHEMES
Conditioned air flow
Exhaust air flow
Free--Cooling air flow
Condensing air flow
1
2
4
5a
3
1
2
3
4
5b
IndoorOutdoor
Fig. 5 -- Mechanical cooling Fig. 6 -- Free -- Cooling
IndoorOutdoor
Conditioned air flow
Exhaust air flow
Free--Cooling air flow
Condensing air flow
4
5a
3
1
2
1
2
4
5b
3
Manufacturing Specifications
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Tab.6 -- HTU -- Functional Parts
REF. DESCRIPTION
1 Evaporator
2 Evaporator fan
3 Condenser
4 Condenser fan
5a Free--Cooling damper [closed]
5b Free--Cooling damper [open]
Tab.7 -- HTD -- Functional Parts
REF. DESCRIPTION
1 Evaporator
2 Evaporator fan
3 Condenser
4 Condenser fan
5a Free--Cooling damper [closed]
5b Free--Cooling damper [open]
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Control Software and Hardware
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Control Software and
Hardware
BASIC [Carel ìAC] + ADVANCED[Carel pCO2]
The HTD/U units can be supplied with twomicroprocessor control levels:
S BASIC with user interface 4x20 LCD
S ADVANCED
Optional configuration:
-- with user interface 4x20 LCD
-- with built--in display 4x20 LCD
For the ADVANCED controls, a remotedisplay is available too, and can bepositioned up to 200 m far with a simpleplug--in connection with phone--typecable.
All microprocessors, BASIC, ADVANCEDand ADVANCED with built--in display4x20 LCD, enable to control completelythe units, such as:
S Sensors
-- room temperature to keep the inner
set--point
-- outer temperature to pilot the
Free--Cooling damper
-- delivery temperature to prevent the
risks of thermal shocks of the room
electronic equipment
-- condensing pressure (optional)
-- evaporating pressure (optional)S Functions:
-- room temperature management
-- reading of the relative humidity
(optional)
-- control of the air outlet min.
temperature in the environment
-- control of the air de--humidification by
reducing the fan speed (with optional
sensor and with optional dc fans)
-- heating (optional)
-- alarm control equipped with clean
contacts for the remote connections
of visual and sound systems-- stand--by management of two units.
The LAN connection by the
ADVANCED microprocessor,
ensures other functions such as
SMART, Free--Cooling, modem
sharing, etc.
-- clean contacts for every other type of
alarm (optional)
-- from the microprocessor it is possible
to select the automatic restart after a
voltage lack
-- min. time between two compressor
start --ups
-- remote interface,up to 200m, directly
connected using a LAN connection
(for mP ADVANCED)
-- possibility of connecting the unit with
a supervision system (optional)
-- 2 password levels to access the unit
configuration
-- clock card for recording the evendate and time
-- hour--counter to enable a scheduled
maintenance of the fans,
compressors and filters
-- automatic switching between two
compressors for each unit with
double refrigerating circuit. The
algorithm can be selected to achieve
the “one in operation – one in stand
by” strategy or to achieve a balanced
operating time between two circuits.
The second circuit, too, is started
when exceeding the preset set--pointtemperature, independently from the
selected control strategy.
Note: the ADVANCED control is available for all units with double circuit, only.
mP ADVANCED[Carel pCO2] technical data
S Flash memory: 1 MByte expandable to 16 MByte. . . . . . . . . . .
S RAM memory: 256 kByte expandable to 1 MByte. . . . . . . . . . .
S Parameter memory: 2 kByte. . . . . . .
S Analog inputs: B4 -- B5 = two inputs for NTC probes (--50 # 100!C), PT1000 (--100 # 200!C) / clean inputs. . . . . . . . . . .
B1 -- B2 -- B3 = three inputs for NTC probes (--50!C # 100!C); voltage 0 # 1 V dc / 0 # 10 V dc,
current 0 # 20 mA / 4 # 20 mA
S Analog outputs: Y1 -- Y4 = four opto--insulated outputs 0 # 10 V dc, max. load 10 mA (1 k$). . . . . . . . . .
S Digital inputs: ID1 -- ID8 = eight opto--insulated inputs 24 V ac 50/60 Hz / 24 V dc. . . . . . . . . . . .
S Digital outputs: No.1 # No. 8 = electro--mechanical relays. . . . . . . . . . .
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Control Software and Hardware
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mP BASIC[Carel ìAC] technical data
S Analog inputs: B1 -- B2 -- B4 = three inputs for NTC temperature probes (10 k$ a 25!C). . . . . . . . . . .
B3 = one input for humidity/pressure probe (0 # 1 V dc / 4 # 20 mA) + V = probe supply
output (14 V dc, 30 mA max.)
S Analog outputs: Y1 = output 0 # 10 V dc, not opto--insulated, referred to the supply potential G0, max. load. . . . . . . . . .
10 mA (1 k$)
Y2 = phase disconnection output
S Digital inputs: ID1 -- ID10 = ten non--optoinsulated inputs referred to the supply potential G0, supplied. . . . . . . . . . . .
with 24 V ac, current absorbed by each input 6.5 mA at 24 V ac
S Digital outputs: OUT1 -- 5 = 5 SSR, 24 V ac, 1 A, with min. current 20mA. . . . . . . . . . .
OUT6 -- C6 = 1 relay, 220 V ac
OUT7 -- C7 = 1 relay, 220 V ac
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Free--Cooling: capacity of two units
Free--Cooling: capacity of one unit
RoomSet Point
FFT 2FFT 1
Coolingcapacity
True containerthermal
requirement
Room air
temperatureFig. 7 -- Operating diagram
List of the Main Options
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List of the Main Options
1 ADVANCED microprocessor
Programmable microprocessorwith 16 bitand high performances.
2 Air differential pressure switch
3 Double supplyS AC main supply from the mains:
-- Compressor/s
-- Fan/s of the condensing
section
-- Heating
S Auxiliary supply 48 VDC
(24 V DC, upon request):
-- Microprocessor
-- Evaporating section fan
Note: it is possible to activate the fanspeed control to enable the coilenergy saving during itsoperation.
-- Damper servomotor
4 Refrigerant R134a
For extreme outdoor conditions up to+45!C.
5 Free--Cooling with damper
Thanks to the unit designing principle, it ispossible to carry out the “upgrading onsite” on the units not equipped with theFree--Cooling option.
6 ETV--T “ElectronicThermostatic ValveTechnology”
For applications where the directFree--Cooling is not possible.This solution enables to reduce theenergy consumption up to 50%compared to the standard units when theoutdoor temperature is below 20!C.
7 Humidity sensor
For the enthalpic control in theFree--Cooling situations (combined withthe mP ADVANCED control).
8 Condensation control
9 InterconnectivityS Serial port:
-- RS232
-- RS485S Communication protocol:
-- Carel
-- Modbus%
-- LonWorks%
-- BACnett
-- TCP--IP
-- GSM modem (complete
management through SMS
Services).
Free--Cooling TechnologyThe innovative Free--Cooling systemenables to reach outstanding efficiencylevels, above all when operatingsimultaneously with the mechanicalcooling: this situation, in many central
European climate areas, represents over50% of the yearly total hours.
The damper is further designed to beintegrally extracted, thus enabling acomplete maintenance possibility as wellas the access to the condensatecollection tray.
The HTD Udesigning concept enablesthe upgrading on site of units notequipped with the Free--Cooling option;this is important in such cases where it isnecessary to have a unit stock at
disposal.
The temperature sensors installed atdelivery, intake and fresh air controlcompletely the damper, improving itsenergy efficiency and avoiding the risk ofinlet air at temperatures lower than thelimit allowed by the electronic equipment.
In case of combination with DUAL supply,mains + DC UPS, the Free--Cooling canenable to control the climate even inemergency situations and, if the two unitsare reciprocally connected, it canimplement all strategies for avoiding to
lose the control of the inner set point of thecontainer (see Fig. 7).
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List of the Main Options
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Damper servomotor withspring return
It positions the dampers completely openor completely closed at the customer’schoice in case of power lack: with anoperation signal connected with a fire
alarm, the damper is usually positionedclosed, to enable the operation of theautomatic switching--off systems.This option must be defined at the order.
Clogged filter sensor
This differential pressure sensor detectsthe filter clogging and generates an alarmdisplayed by the microprocessor control.
Heating
It is performed by using heaters inextruded aluminum, with high thermalexchange surface: this aspect enables tomatch reduced thermal inertias with
reduced surface temperatures, to theadvantage of a full use safety. Eachheating element is protected by a safetythermostat directly acting on the supply.
Outer paneling
The standard supply includes panels inpainted galvanized sheetmetal RAL7035.
Surface treatments on finnedcoils
An efficient protection against corrosiveagents is guaranteed by thecopper--copper version, the cataphoresisprotection and the use of hydrophilepre--treated aluminum: the protectiongrade is reported in the mentioned order.
Refrigerants
According to the norm EEC 2037/00, theHTD U units can operate with:
S HFC R407C as standard
S HFC R134a (optional)S HCFC R22 Export non--EEC in the
countries signing the Montreal
protocol
The unit is supplied: tested and ready tobe started up on the site.
Alarms
It reports high and low priority alarms onclean contacts. In case of ADVANCEDmicroprocessor, it is possible to have asubdivision of the alarm type in the
terminal board of the electric panel and,generally, it is possible to arrange Customsolutions according to the different supplystandards of the phone companies.
Air distribution grilles
The wall--mounted air distributions grillesare made of extruded aluminum, withsingle row of adjustable fins andaccident--prevention protection net on thedelivery. In case of Free--Cooling unit, afurther net is arranged on the air outlet toprevent the unwished entry of small
animals and/or insects.
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Tests and Reference Standards
14 HTD/U--0--PD--GB--00 -- 05.10.2003
Tests and ReferenceStandards
Safety
The HTD Uunits have been designed,manufactured and tested according tothe directives of the European Union:
D 98/37/EC(former 89/392/EEC, 91/368/EEC,93/68/EEC)
D 89/336/EECD 73/23/EEC
Electric boards
The electric boards comply withEN 60204--1.
Electro--magneticcompatibility
The HTD U units complies with thefollowing EMC standards:
S EN 50081--1, Emissions
(”Generic emission standard, Part 1:
residential, commercial and light
industrial”, January 1992)
S EN 50082--2, Electro--magnetic
compatibility
(”Generic emission standard,
Part 2: industrial environment”,
March 1995)
Conformity
Each HTD Uunit is supplied completewith test certificate and conformitycertificate according to the Directives ofthe European Union.The units are “ E”marked.
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Technical Data
15HTD/U--0--PD--GB--00 -- 05.10.2003
Technical Data
Tab.8 -- Performance table
MODEL: HTD/U 045 056 073 090 105 120 150 170
Refrigerant [Ashrae] R407C
Total cooling capacity
[I.T. 27ºC; R.H. 40% / O.T. 35ºC] kW 4.50 5.60 7.10 8.97 10.85 11.85 14.98 17.20
Power supply [standard] V / Ph / F 230 / 1 / 50 400 / 3+N / 50
Power supply [option 1] V / Ph / F -- 400 / 3+N / 50 230 / 1 / 50 --
Power supply [option 2] V / Ph / F 230/1/50+
230/1/50 400 / 3+N / 50 + 230 / 1 / 50
Power supply [option 3] V / Ph / F 230 / 1 / 50 + 48 VDC 400 / 3+N / 50 + 48 VDC
Power supply [option 4] V / Ph / F -- 400/3+N/50 + 48VDC 230 / 1 / 50 + 48 VDC --
Total absorbed power W 1810 2330 2990 3950 4400 5000 6040 7030
Total absorbed current A 8.3 14.3 13.6 11.8 12.5 13.6 17.8 18.6
FLA A 15.1 16.0 19.6 17.5 17.5 19.5 21.7 25.7
LRA A 30 47 61 40 46 50 65 74
Indoor fan/s absorbed power
-- 230V / 1Ph / 50Hz W 108 310 470 520
Indoor fan/s absorbed power
-- 48VDC [option] W 100 260 350 450
Indoor air flow m3 /h 1450 2100 3020 3800
Indoor air flow
-- Free Cooling [40 Pa]
m3 /h 1320 1320 1980 2850 2810 2810 3550 3550
Free Cooling temperature ºC 17.8 15.5 17.0 18.2 16.3 15.4 15.3 13.6
Air filter efficiency -- G 3
Sound power level dB(A) 69 72
Sound pressure level
[10m in free field] dB(A) 58 61
Type Rotary ScrollCompressor
No. 1
Refrigerating circuit No. 1
Oil charge [each compressor] dm3 0.44 1.00 1.00 1.10 1.10 1.10 1.36 1.65
Indoor coil front surface m2 0.30 0.38 0.42
Outdoor coil front surface m2 0.33 0.45 0.52
Condenser air flow m3 /h 2250 3750 4700
Condenser fan -- HTU
-- HTD No.
1
1
1
2
2
2
Width x Height x Depth mm 800 x 1850 x 550 1000 x 1850 x 550 1160 x 1850 x 550
Weight kg 120 128 135 195 200 210 245 250
FLA = Max. operating current.
LRA = Pickup current.
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Dimensional Drawings
16 HTD/U--0--PD--GB--00 -- 05.10.2003
Dimensional Drawings
MOD. HTD 045 -- 056 -- 073 -- 090 -- 105 -- 120 -- 150 -- 170
FRONT VIEW SIDE VIEW
TOP VIEW
45
3 7 . 5
3 7 . 5
2 6 3
2 6 3 . 5
2 3 8
1 0 4 8
550
2 6 3
2 6 3 . 5
2 3 8
1 0 4 8
85
1 0 1
5 5
1 8 5 0
A
65 B 80
C 300 300D E
REAR VIEW
A B C D E
HTD 090 --105--120
HTD 150 --170
HTD 045 --056--073 800
1000
1160
655
855
1015
250
135
150
250
130
260
--
135
150
MODELS
A
4 5
5 5 0
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Dimensional Drawings
17HTD/U--0--PD--GB--00 -- 05.10.2003
MOD. HTU 045 -- 056 -- 073 -- 090 -- 105 -- 120 -- 150 -- 170
3 0
9 4 6
9 4 6
1 0 1
310230 460
3 3 5
2 3 7
3 0 1
65 655 80
550
2 3 7
3 6 0
2 6 2
4 5
5 5
85
A
1 8 5 0
4 3
2 5 0
2 5 7
100 100
FRONT VIEW SIDE VIEW
TOP VIEW
REAR VIEW
4 5
9 4 6
300
2 6 2
2 3 7
3 6 0
65 80
REAR VIEW
A
B
C ED 300
1 8 5 0
HTU 045--056--073--150--170
HTU 090--105--120
A B C D E
HTU 090 --105--120
HTU 150 --170
HTU 045 --056--073 800
1000
1160
655
--
1015
150
--
150
350
--
260
--
--
150
MODELS F
600
1000
800
A
F
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Refrigerant Circuit
18 HTD/U--0--PD--GB--00 -- 05.10.2003
Refrigerant Circuit
MOD. HTD/U 045 -- 056 -- 073 -- 090 -- 105 -- 120 -- 150 -- 170
P
M
P
M
4
2
5
6
3
9
8
1
7
Tab.9 -- Refrigerant Circuit
REF. DESCRIPTION REF. DESCRIPTION
1 Compressor 6 Sight glass
2 Condenser 7 Low pressure switch (LP)
3 Thermostatic valve 8 High pressure switch (HP)
4 Evaporator 9 Condensing pressure probe
5 Filter dryer
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H T D / U - - 0 - - P
D - - G B - - 0 0 - - 0 5 . 1
0 . 2
0 0 3
High Technology in Refrigeration Devices
HiRef S.p.A Via Umbria, 5/c -- 35043 Monselice (PD) – Italy
Tel. +39 0429 784683 -- Fax +39 0429 701447
e--mail: [email protected] -- Web: http://www.hiref.it
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